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Eisthen, H. L.

Publications and source records attributed to Eisthen, H. L..

2 recordsLinked to original sources

Mechanosensory Signaling in Axolotl Courtship and Evolution of Communication

In behavioral biology, many models have been proposed to explain how communication systems evolve. Within neuroethology, the principle of sender-receiver matching has spurred much research in auditory communication, but fewer studies on mechanosensory communication. We investigated sender-receiving matching in mechanosensory communication, focusing on the "hula", a courtship behavior that produces an undulating movement of the tail, in axolotls (Ambystoma mexicanum), an aquatic salamander. We characterized typical courtship behaviors, then quantified tail-motion parameters (speed, sweep angle, and elevation angle) from males as they performed the hula. We then constructed a "Robotail", a robotic device that mimics the physical and motion properties of the male tail during courtship. Interestingly, females initially responded to the Robotail as if it were a prey item, an effect that was mitigated by the addition of male whole-body odorants. We examined female behavioral responses to changes in individual Robotail movement parameters and found that speed and sweep angle were important to locomotion. Females transitioned between locomotor states more often when exposed to combinations of wide sweep angles and fast speeds from the Robotail, which males perform moderately or rarely, perhaps reflecting a preference for vigorous movements. We then assessed neural responses to stimuli generated by the Robotail by recording from the anterodorsal lateral line nerve (ADLLn), which innervates the mechanosensory neuromasts on the snout. The female ADLLn responded most vigorously when stimulated with moderate sweep angles and speeds, parameters often used by courting males. Thus, our behavioral results support a receiver bias model but our neurophysiological results support a sender-receiver matching model within mechanosensory communication during courtship in axolotls. Our results also provide novel evidence that mechanosensory cues generated during hula behavior in salamanders play a role in courtship.

neuroscience↗

Normal table of post-embryonic larval development for the California newt, Taricha torosa

We present here a normal table for post-embryonic development in the California newt (Taricha torosa), part of a genus of newts frequently studied for their toxicity and role within a predator-prey relationship. We generated the table by observing larvae collected as eggs in the wild and hatched and reared in the lab through metamorphosis. Building upon an established table consisting of 40 embryonic stages of development, our table consists of 13 stages based on discrete anatomical changes, primarily in limb development, and concludes at Stages 12-13 when the larvae undergo metamorphosis. We also describe more gradual phenotypic changes and their correlation to discrete stages in the developmental timeline. Finally, we illustrate the variability of the timing for reaching these stages in a controlled lab environment, demonstrating that time from hatching is not a reliable metric for standardizing results for diverse studies involving developing larvae. This staging table and accompanying observations will facilitate cross-study integration of research with larval T. torosa.

zoology↗